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Natures Wave Genetics

Dr Gariaevs experiments demonstrate that our DNA operates not just biochemically but also through wave phenomena, providing hope of revolutionizing medicine and lengthening human lives. This discovery could revolutionize medicine while increasing longevity.

As DNA moves through transcription, translation, and replication processes it moves and emits waves; for the first time ever scientists were able to acquire and visualize such waves.

The DRD4 Gene

The DRD4 gene regulates the release of dopamine, an essential neurotransmitter involved in several neurological processes including attention and movement. Dopamine plays an integral part of these neurological processes as well as being one of the most-studied genes with links to various psychiatric disorders, drug addictions and certain personality traits; additionally it contains multiple polymorphisms which alter its DNA sequence.

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Since the DRD4 gene was cloned and its polymorphic variants (VNTRs) discovered, much interest has been generated to identify its functions; however, linkage studies with two major neuropsychiatric conditions – schizophrenia and bipolar disorder – have thus far proven inconclusive (Seeman et al. 1997a).

Recently, it has been suggested that VNTR of DRD4 plays an essential role in human behavior by altering postsynaptic action of dopamine. This theory stems from observations showing some individuals carrying this gene seeming drawn towards adventure and risk-taking activities such as skydiving or cliff jumping.

The VNTR of DRD4 is a variable length sequence of nucleotides that causes various amino acid substitutions within its protein, leading to altered amino acid substitution patterns within DRD4. The 7R allele has been linked with increased risk-taking activities like surfing, diving, mountain climbing, skydiving and motorcycle racing.

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Furthermore, research indicates that the 7R allele can increase dopamine effects in the brain through an increase in dopamine receptors at presynaptic membranes, leading to greater dopamine production within brain tissue and ultimately leading to an increase in dopamine levels overall.

The 7R allele has also been linked with higher risks of alcoholism and financial investments that involve taking greater risks – and men more than women appear more prone to these behaviors due to genetic predisposition; perhaps due to having more aggressive personalities; perhaps this explains why so many male surfers possess what is known as an adventure gene, paddling into big waves that others might find terrifying.

The Adventure Gene

Science may offer insight into why some individuals crave adventure and change while others seem content to sit around watching television all day. A DRD4 gene known as the Wanderlust Gene has been proposed as one possible solution; research indicates that those carrying longer alleles tend to experience feelings of curiosity and restlessness more easily than their counterparts.

Chuansheng Chen, one of the scientists involved with this research, took one step further by exploring DRD4-7r frequency in populations who have migrated. He discovered that long forms of alleles such as DRD4-7r were more prevalent among populations who have traveled further from their ancestral homeland; suggesting wanderlust may have played an essential part in human evolution.

At its heart, DNA plays an incredible role in human life and how people behave; this explains why some feel drawn to travel for work, pleasure or any other reason. But this is only scratching the surface – understanding its wave structure and linguistic patterns plays far greater of an effect than current discrete “particle” models can accommodate.

Spiritual teachers have long understood that our DNA can be programmed through words and thoughts (frequency). All it takes to make contact is knowing which frequency corresponds with it.

Though DRD4-7r may be associated with wanderlust and an adventurous spirit, ultimately getting out of one’s comfort zone and heading towards Himalayas or Tahiti requires greater consciousness and reasoning skills. Even then, however, other factors could prevent us from ever taking that flight, such as our neurotransmitter serotonin being linked to harm avoidance and our need for safety. Are You Curious to Discover Your DRD4-7r Allele and Discover Its Effect on Adrenaline Addiction and Adventure Seekers? Book a Tour With The Adventure Company Australia Today! Their authentic wilderness tours through Australia’s Alps include accommodation, meals, transport and guides; choose between 2, 4, 8 or 14 day expeditions!

The Surfing Gene

Surfing can be one of the most exhilarating and demanding activities available, yet many find themselves drawn to it more naturally than others. One theory suggests that people born with what scientists refer to as the Warrior’s Gene possess an irrepressible drive for adventure that makes paddling out easier than for others.

Surfers have it good in terms of health when it comes to their genetic traits: DRD4 gene impacts production of dopamine, which increases natural painkillers in the body and enhances mood, making it easier for sore muscles and injuries sustained during long sessions on the beach to heal more quickly and recover more efficiently. Furthermore, thanks to ACTN3 genes which regulate muscle fiber growth and speed – great for making those hard turns in the water! Additionally COL5A1 genes regulate collagen production, providing ligament and tendon strength which makes surfers less susceptible to strains resulting from accidental wipeouts on the waves.

Surfers may not find the gene governing body weight particularly helpful. This gene determines how much weight one can carry before fatigue sets in, impacting how far they can surf before becoming exhausted. Furthermore, the IL6 and TNF genes control inflammation levels – and thus how quickly the body recovers from sore muscles or injuries.

Range expansions often experience increased expansion load due to genetic surfing – the practice in which slightly deleterious mutations spread more rapidly than beneficial ones during population expansions due to diminished purifying selection efficacy in smaller populations, increasing the probability that slightly deleterious mutations will surf upstream of an expansion wave and thus leading to significantly higher mutation rates than core populations.

The Thrill of the Ride

The DRD4 gene may explain why some people feel an irresistible urge to chase waves or leap off cliffs, but there may be deeper psychological factors at work here too. Scientists have discovered that some of us possess what is known as the Adventure Gene – this activates when engaging in adrenaline-inducing activities such as surfing, skydiving or racing cars and motorcycles.

This discovery marks a crucial step towards quantum biology – an exciting new field that applies the principles of quantum mechanics to living organisms and could revolutionize medicine and extend human lifespans, yet has significant ethical considerations attached. Before manipulating DNA we must fully comprehend its properties first.

One of the most astonishing discoveries in quantum biology is that our genetic apparatus operates not just biochemically but also as a wave phenomenon. Genes encode with holographic patterns reminiscent of speech structures; Gariaev has shown how our genetic machinery can be programmed using language-modulated laser rays or radio waves.

Linguistic programming has enormous potential to transform lives, from increasing lifespans and reversing disease processes, to creating new organs or altering existing ones. Furthermore, this technology must be utilized responsibly within an ethical framework, while simultaneously understanding how it may impact our biosphere.

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